暗分类群生物多样性规模评估综合框架:以Megaselia(双翅目,萤火虫科)为例进行研究

IF 3.2 2区 农林科学 Q1 ENTOMOLOGY Insect Conservation and Diversity Pub Date : 2024-06-25 DOI:10.1111/icad.12762
Valerio Caruso, Emily Hartop, Caroline Chimeno, Sajad Noori, Amrita Srivathsan, Michael Haas, Leshon Lee, Rudolf Meier, Daniel Whitmore
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引用次数: 0

摘要

物种灭绝现象在全球范围内不断增加;因此,快速盘点地球上的生物多样性变得越来越重要。由于昆虫在动物群中所占的比例最高,并发挥着关键的生态作用,因此迫切需要研究昆虫的生物多样性并加速物种发现,尤其是那些未被充分研究的昆虫类群,也被称为 "黑暗类群"。萤火虫科(双翅目)是 "黑暗类群 "的一个很好的例子,特别是 Megaselia Rondani 属。由于仅用形态学方法可能不够精确且速度较慢,而仅用分子学方法往往又不够充分且容易出错,因此使用综合方法是描述超多样化黑暗类群的最佳方法。在此,我们采用大规模综合分类法(LIT),根据DNA条形码将9000种巨细胞藻分类为277个推定物种。每个聚类都通过了聚类与形态学不一致指数(最大 p-距离、稳定性指数)的预测评估,并对一部分标本进行了形态学检查。我们利用 Chao1 进行了物种估计,结果表明我们数据集的物种丰富度增加了 15%。由于这一估计主要基于德国南部的样本,因此随着地理取样范围的扩大,物种数量可能会增加。尽管德国的昆虫动物群是欧洲最著名的昆虫动物群之一,而且对噬虫目昆虫的研究已有一百多年的历史,但这是对该分类群研究的一大进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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An integrative framework for dark taxa biodiversity assessment at scale: A case study using Megaselia (Diptera, Phoridae)

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来源期刊
CiteScore
7.70
自引率
8.60%
发文量
58
审稿时长
>12 weeks
期刊介绍: To publish papers of the highest scientific quality within the general area of insect (and other arthropods) conservation and diversity covering topics ranging from ecological theory to practical management. Papers are invited on the following topics: Conservation genetics; Extinction debt; Long-term conservation planning and implementation; Global implications of local or national conservation actions; Management responses of species and communities; Captive breeding programs; Comparisons of restored and natural habitats; Biogeography; Global biodiversity; Metapopulation dynamics; Climate change: impacts on distributions and range; Invasive species: impacts and control; Effects of pollution; Genetic threats to diversity by introgression; Effects of fragmentation on diversity and distribution; Impact of agricultural and forestry practices on biodiversity; Enhancing urban environments for diversity and protection; Biodiversity action plans: can we scale up from insects?; Effectiveness and choice of indicator species; Soil biodiversity and interactions with above-ground biodiversity; Ecological interactions at local levels; Ecological and evolutionary factors influencing diversity and local, regional and global scales; Sustainable livelihoods and training on the ground; Integrating science and policy.
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